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Accelerating the photodegradation of polymeric materials is of great practical interest in weathering research.
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On the other hand, titanium dioxide transformed from TNTs during combustion can be anchored in the char layers to enhance the thermal stability of the char layers and accelerate the photodegradation of PVC matrix under UV irradiation.
A general example demonstrates this: it has been shown that samples of clay minerals found in soils can accelerate the photodegradation of synthetic chemicals via production of reactive oxygen species [e.g., 86]; it may therefore be assumed that many naturally occurring compounds are similarly affected.
by accelerating the joining of small contigs.
The photodegradation of the pollutants followed first-order kinetics.
Then the photodegradation of MB with LP(Ti) was tested.
A possible pathway for the photodegradation of DPA was suggested.
The photocatalytic activity was evaluated toward the photodegradation of RhB.
These reactive radicals are responsible for the photodegradation of dye.
The photodegradation of MB follows pseudo-first-order kinetics.
Moreover, the ZnO-2.6N sample exhibited the higher activity for the photodegradation of MB than the photodegradation of MO and RhB.
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